Results 261 to 270 of about 719,896 (409)
USP42 is identified as a novel DUB of PPARγ in hepatocytes. USP42 mediated PPARγ deubiquitylation determines its transcriptional preference on proliferative and redox balance genes. USP42 knockdown exacerbates liver damage and delays regeneration. FGF2 is the upstream signal that initiates and activates the USP42‐PPARγ axis.
Nanfei Yang+16 more
wiley +1 more source
Simple Detection Methods for Antinutritive Factor β-ODAP Present in Lathyrus sativus L. by High Pressure Liquid Chromatography and Thin Layer Chromatography. [PDF]
Ghosh B+6 more
europepmc +1 more source
Rheumatoid arthritis is a prototypic autoimmune disease characterized by highly prevalent autoantibodies – anti‐citrullinated protein antibodies (ACPA). A novel nanoHPLC‐MS approach based on the intact Fc/2 subunit identifies hitherto neglected Fc proteoform profiles of IgG (auto)antibodies across different biofluids. The findings demonstrate subclass‐
Constantin Blöchl+5 more
wiley +1 more source
Nanoodor Particles Deliver Drugs to Central Nervous System via Olfactory Pathway
This study have elucidated the brain‐targeted delivery pathways and transport mechanisms of nanoodors by various technical means and found that the olfactory pathway is main one. Nanoodors can rapidly deliver drugs to the central nervous system via olfactory pathway and will hopefully solve the delivery challenges for various types of central nervous ...
Wei Zhang+8 more
wiley +1 more source
This study explores the structural heterogeneity and evolutionary adaptations of heteromultimeric bacterioferritins. Hetero‐Bfrs, evolved from either a homo‐Bfr or Ftn by gene duplications, differ from homo‐Bfrs substantially in the mechanisms underpinning iron oxidation and reduction despite high similarity in overall structure.
Yingxi Li+5 more
wiley +1 more source
This study verifies that circRNA‐mTOR exhibits high expression levels in HCC and has a strong correlation with patient prognosis. Mechanistically, circRNA‐mTOR achieves this effect by facilitating the nuclear translocation of RNA‐binding protein (RBP) PSIP1 through specific binding.
Yongchang Tang+12 more
wiley +1 more source
RFWD3 Reprograms Nucleotide Metabolism Through PHGDH to Induce Chemoresistance In Osteosarcoma
RFWD3 is identified as a key regulator of cisplatin (DDP) sensitivity in osteosarcoma using a genome‐wide CRISPR screen. RFWD3 promotes PHGDH ubiquitination, enhancing NAD+‐mediated nucleotide biosynthesis. Knocking out RFWD3 sensitized osteosarcoma cells to DDP.
Wenchao Zhang+6 more
wiley +1 more source